3. Determine the long-term deflection (greater than 60 months) for the section shown below. Assume that 20% of the live load is sustained. The loads on the beam are provided below. The concrete is normal weight, f,'= 4,500 psi, and f, = 60,000 psi. The span of the beam is 26-ft and is simply supported. Assume the clear cover is 1.5 in. and #4 stirrups. For the maximum deflection of the beam use the basic deflection equation below. (40 pts.) 5wl* Amax= 384EI Unfactored uniformly distributed loads: Wp = 1.4 kips/ft (includes self-weight) WL = 1.6 kips/ft 12 in. 32.5 In. 36 In. 6 No. 9 bars

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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3.
Determine the long-term deflection (greater than 60 months) for the section shown
below. Assume that 20% of the live load is sustained. The loads on the beam are
provided below. The concrete is normal weight, f.'= 4,500 psi, and f, = 60,000 psi. The
span of the beam is 26-ft and is simply supported. Assume the clear cover is 1.5 in. and
#4 stirrups. For the maximum deflection of the beam use the basic deflection equation
below. (40 pts.)
5wl*
Amax
384EI
Unfactored uniformly distributed loads:
Wp = 1.4 kips/ft (includes self-weight)
WL = 1.6 kips/ft
12 in.
32.5 In.
36 In.
6 No. 9 bara
Transcribed Image Text:3. Determine the long-term deflection (greater than 60 months) for the section shown below. Assume that 20% of the live load is sustained. The loads on the beam are provided below. The concrete is normal weight, f.'= 4,500 psi, and f, = 60,000 psi. The span of the beam is 26-ft and is simply supported. Assume the clear cover is 1.5 in. and #4 stirrups. For the maximum deflection of the beam use the basic deflection equation below. (40 pts.) 5wl* Amax 384EI Unfactored uniformly distributed loads: Wp = 1.4 kips/ft (includes self-weight) WL = 1.6 kips/ft 12 in. 32.5 In. 36 In. 6 No. 9 bara
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